Effective Charging of Commercial Lithium Cell by Triboelectric Nanogenerator with Ultrahigh Voltage Energy Management

Author:

Dai Yiming12,Liu Guoxu23,Cao Jie24,Fan Beibei25,Zhou Weilin12,Li Yongbo23,Yang Jun25,Li Ming12,Zeng Jianhua25,Chen Yuanfen1,Wang Zhong Lin23,Zhang Chi123ORCID

Affiliation:

1. School of Mechanical Engineering Guangxi University Nanning 530004 P. R. China

2. Beijing Key Laboratory of Micro‐nano Energy and Sensor Center for High‐Entropy Energy and Systems Beijing Institute of Nanoenergy and Nanosystems Chinese Academy of Sciences Beijing 101400 P. R. China

3. School of Nanoscience and Engineering University of Chinese Academy of Sciences Beijing 100049 P. R. China

4. Institute of Intelligent Flexible Mechatronics Jiangsu University Zhenjiang 212013 P. R. China

5. Center on Nanoenergy Research School of Physical Science and Technology Guangxi University Nanning 530004 P. R. China

Abstract

AbstractIt is an increasingly mature application solution that triboelectric nanogenerator (TENG) supplies power to electronic devices through its power management system (PMS). However, the previous PMS is able to manage a limited voltage magnitude and the energy storage elements are limited to capacitors. This work proposes an ultrahigh voltage PMS (UV‐PMS) to realize the charging of commercial lithium cells (LCs) by TENG. The design of UV‐PMS enables energy management of TENGs with ultrahigh open‐circuit voltages up to 3500 V and boosts the peak charging current from 30.9 µA to 2.77 mA, an increase of 89.64 times. With the introduction of UV‐PMS, the effective charging capacity of LC charged by a TENG at a working frequency of 1.5 Hz for 1 h comes to 429.7 µAh, making a 75.3 times enhancement compared to charging by TENG directly. The maximum charging power comes to 1.56 mW. The energy storage efficiency is above 97% and the overall charge efficiency can be maintained at 81.2%. This work provides a reliable strategy for TENG to store energy in LC, and has promising applications in energy storage, LC's life, and self‐powered systems.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Beijing Municipality

Publisher

Wiley

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